Probe for providing a fluid connection with the small intestine comprising a tube (10) to be inserted in the small intestine via the stomach, having proximal and distal open ends (10A, 10B) and inherent tendency of coiling over a predetermined length at the distal end, and a guide (14) displaceable in the tube from the proximal end for straightening said length in order that it shall be straightened during the actual insertion into the stomach. According to the invention the tube has at least in said predetermined portion a hairy, frosted, rough, ribbed or finned outside surface (16).
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1. A catheter for providing a fluid connection with a small intestine, preferably for nutriment supply to said small intestine, comprising a tube (10) to be inserted into said small intestine via a stomach having proximal and distal open ends (10A, 10B) and having inherent tendency of coiling over a predetermined length at the distal end thereof, and a guide (14) displaceable in said tube from said proximal end thereof for straightening said predetermined length in order that it will be straightened during actual insertion in said stomach, wherein said tube (10) at least in said predetermined length has at least one of a hairy, frosted, rough, ribbed and finned outside surface (16).
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The invention relates to a catheter for providing a fluid connection with the small intestine, preferably for liquid supply, for example nutriment supply, to said intestine but also for diagnostics (injection of contrast agent for taking an X-ray of an intestine or taking samples of the testine contents or the mucous membrane), comprising a tube to be inserted into the small intestine via the stomach, having proximal and distal open ends and having inherent tendency of coiling over a predetermined length at the distal end thereof, and a guide displaceable in the tube from the proximal end thereof for straightening said predetermined length in order that said length is straightened during the actual insertion into the stomach.
A catheter of this type is used for post-operative nutriment supply via the intestine in order to replace intravenous nutriment supply which is more difficult to administrate but above all costs 5 to 10 times more and also is associated with substantial complications. The catheter is positioned at the distal end thereof in the small intestine, preferably in the upper part of jejunum, in the manner described in EP 0 278 97. The catheter having said normally coiled predetermined length thereof straightened by the guide being pushed into said length is inserted at the distal end thereof into the stomach through the nose or the oral cavity via the gullet and the esophagus, or also percutaneously. At following nutriment supply in the normal manner during a predetermined period the catheter is advanced from the stomach into the small intestine by the movements of the stomach and the peristaltic movements of the intestine because the coiled length of the catheter will be processed by the stomach and the small intestine in the same manner as the surrounding nutriment. Thus, the catheter is self-feeding. Usually the coiled length of the catheter should be located in the upper part of jejunum, and when this position has been reached the catheter is fixed such that it cannot be further advanced into the small intestine. Once located the distal end of the catheter will be held anchored in jejunum by the coiled length engaging the inside corrugated surface of the intestine. The purpose is thus to provide the greatest possible friction between the catheter and the intestine wall.
JP-A-08098889 relates to a catheter to be inserted into the internal organs of the body and is of the prior art type having a weight at the distal end thereof in order that the catheter can more easily be inserted and located in the correct position in the organs. The catheter according to said publication in a distal end portion thereof forming a guide has a row of a number of polyhedral bodies having a specific weight of 1 or more and enclosed by an elastic film so that the catheter at the outside thereof forms unevenness in order to be advanced by peristaltic convulsions of the organs. The advantage of this embodiment of the catheter is said to be that the insertion of the catheter and change of the direction thereof will be facilitated the pain felt by the patient at the same time being reduced.
The catheter described in EP 0 278 937 has been found to well satisfy the purpose thereof in practice. The catheter does not differ essentially from conventional nasoenteric silicone tubes and, therefore, the costs for manufacturing such a catheter will not be much higher than those for manufacturing silicone tubes. It has been found that the catheter has advanced into the small intestine in 4 to 6 hours after the insertion. After the insertion it will be kept in the position thereof in the upper part of jejunum until it is to be removed usually after seven days or so. The risk of the catheter being returned to the stomach prematurely is small because said length of the catheter having a tendency to coil efficiently prevents dislocation by engaging the inside surface of the small intestine. In about 95% of the cases in which the catheter has been used it has attained the intended position in the small intestine and has maintained that position.
The advancement of the catheter can be stimulated by the supply of Metoclopramide or Erythromycin but not all patients can stand these agents due to side effects connected therewith.
The purpose of the present invention is to further improve the catheter according to EP 0 278 937 regarding self-advancement without supply of said agents while maintaining a safe and even improved retainment of the catheter in the predetermined position, and for this purpose the catheter according to the invention has obtained the characterizing features of claim 1.
In order to explain the invention in more detail some embodiments thereof will be described reference being made to the accompanying drawing in which
The catheter according to the invention shown in
A flexible but unelastic and relatively rigid guide 14 of steel wire rope having substantially the same length as tube 10 is displaceably received in the tube and is provided at the proximal end thereof with a finger grip 15 at which the guide can be held at displacement thereof in the tube.
Adjacent the distal end the tube has a predetermined length with inherent (programmed) tendency of coiling to substantially the shape of a screw winding (memory function) as shown in
At least the predetermined length of the tube at the distal end thereof having a tendency of coiling according to the invention is provided at the outside surface thereof with fimbriae-like short hairs as indicated at 16 in
When the catheter is being used it is inserted into the stomach through the nose or through the oral cavity via the gullet and the esophagus, or percutaneously, with the catheter straightened by the guide 14 being pushed into the predetermined length with tendency of coiling, i.e. in the condition according to
Supply of a nutriment solution or medicaments or, alternatively, sampling takes place through the tube after the catheter being located in the predetermined position thereof.
In the embodiment according to
Patent | Priority | Assignee | Title |
10076382, | Oct 25 2010 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Catheter apparatuses having multi-electrode arrays for renal neuromodulation and associated systems and methods |
10512504, | May 11 2012 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Multi-electrode catheter assemblies for renal neuromodulation and associated systems and methods |
10524988, | Sep 08 2015 | YUZO BABA | Medical tube, and medical tube set |
10736690, | Apr 24 2014 | MEDTRONIC IRELAND MANUFACTURING UNLIMITED COMPANY | Neuromodulation catheters and associated systems and methods |
10792098, | Mar 15 2013 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Helical push wire electrode |
11116572, | Oct 25 2010 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Catheter apparatuses having multi-electrode arrays for renal neuromodulation and associated systems and methods |
11213678, | Sep 09 2013 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Method of manufacturing a medical device for neuromodulation |
11464563, | Apr 24 2014 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Neuromodulation catheters and associated systems and methods |
8343040, | May 04 2005 | OLYMPUS ENDO TECHNOLOGY AMERICA INC | Rotate-to-advance catheterization system |
8366674, | May 04 2005 | OLYMPUS ENDO TECHNOLOGY AMERICA INC | Rotate-to-advance catheterization system |
8377000, | Oct 01 2010 | Abbott Laboratories | Enteral feeding apparatus having a feeding set |
8377001, | Oct 01 2010 | Abbott Laboratories | Feeding set for a peristaltic pump system |
8414477, | May 04 2005 | OLYMPUS ENDO TECHNOLOGY AMERICA INC | Rotate-to-advance catheterization system |
8435229, | Feb 28 2006 | SPIRUS MEDICAL, INC | Rotate-to-advance catheterization system |
8574220, | Feb 28 2006 | OLYMPUS ENDO TECHNOLOGY AMERICA INC | Rotate-to-advance catheterization system |
8591564, | May 03 2002 | LifeShield Sciences LLC | Hypotube endoluminal device and method |
8623013, | Apr 05 1999 | Medtronic, Inc. | Ablation catheters and associated systems and methods |
8689439, | Oct 01 2010 | Abbott Laboratories | Method for forming a tube for use with a pump delivery system |
8747300, | May 04 2005 | Olympus Endo Technology America Inc. | Rotate-to-advance catheterization system |
8774913, | Apr 08 2002 | MEDTRONIC ARDIAN LUXEMBOURG S A R L | Methods and apparatus for intravasculary-induced neuromodulation |
8777841, | May 18 2007 | Olympus Endo Technology America Inc. | Rotate-to-advance catheterization system |
8834464, | Apr 05 1999 | Ablation catheters and associated systems and methods | |
8870755, | May 18 2007 | OLYMPUS ENDO TECHNOLOGY AMERICA INC | Rotate-to-advance catheterization system |
8888773, | May 11 2012 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Multi-electrode catheter assemblies for renal neuromodulation and associated systems and methods |
8934978, | Apr 08 2002 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Methods and apparatus for renal neuromodulation |
8956352, | Oct 25 2010 | MEDTRONIC ARDIAN LUXEMBOURG S A R L | Catheter apparatuses having multi-electrode arrays for renal neuromodulation and associated systems and methods |
8998894, | Oct 25 2010 | MEDTRONIC ARDIAN LUXEMBOURG S A R L | Catheter apparatuses having multi-electrode arrays for renal neuromodulation and associated systems and methods |
9078997, | Mar 29 2007 | Boston Scientific Scimed, Inc | Catheter assembly including coiled internal bolster |
9095321, | Nov 21 2012 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Cryotherapeutic devices having integral multi-helical balloons and methods of making the same |
9138292, | May 11 2012 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Multi-electrode catheter assemblies for renal neuromodulation and associated systems and methods |
9179974, | Mar 15 2013 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Helical push wire electrode |
9289255, | Apr 08 2002 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Methods and apparatus for renal neuromodulation |
9452017, | May 11 2012 | MEDTRONIC IRELAND MANUFACTURING UNLIMITED COMPANY | Multi-electrode catheter assemblies for renal neuromodulation and associated systems and methods |
9554848, | Apr 05 1999 | Medtronic, Inc. | Ablation catheters and associated systems and methods |
9675413, | Apr 08 2002 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Methods and apparatus for renal neuromodulation |
9707035, | Apr 08 2002 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Methods for catheter-based renal neuromodulation |
9855096, | May 11 2012 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Multi-electrode catheter assemblies for renal neuromodulation and associated systems and methods |
9888961, | Mar 15 2013 | MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L. | Helical push wire electrode |
Patent | Priority | Assignee | Title |
3399668, | |||
4834724, | Apr 06 1987 | Device for aspirating fluids from a body cavity or hollow organ | |
4887996, | Feb 13 1987 | Method and tube equipment for supplying fluid to a space and draining said space | |
5059169, | Jul 07 1989 | C. R. Bard, Inc. | High-friction prostatic stent |
5256146, | Oct 11 1991 | ENSMINGER, WILLIAM D ; ANDREWS, JAMES C ; KNOL, JAMES A | Vascular catheterization system with catheter anchoring feature |
5601537, | Jun 05 1995 | SPIRUS MEDICAL, INC | Catheter system |
5902285, | Jan 27 1997 | Nestec S A | Jejunal feeding tube |
5984896, | Oct 28 1997 | OJP #73, Inc. | Fixated catheter |
6280434, | Jan 31 1997 | Terumo Kabushiki Kaisha | Angiographic catheter |
6344038, | Dec 02 1998 | WEBER, PAUL J | Surgical anti-friction device |
6743198, | Mar 20 1995 | ConSert, LLC | Self-cleansing bladder drainage device |
20050245846, | |||
EP278937, |
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